1 // Copyright (c) 2012 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file.
4
5 #include "ui/events/x/touch_factory_x11.h"
6
7 #include <X11/Xatom.h>
8 #include <X11/cursorfont.h>
9 #include <X11/extensions/XInput.h>
10 #include <X11/extensions/XInput2.h>
11 #include <X11/extensions/XIproto.h>
12
13 #include "base/basictypes.h"
14 #include "base/command_line.h"
15 #include "base/compiler_specific.h"
16 #include "base/logging.h"
17 #include "base/memory/singleton.h"
18 #include "base/message_loop/message_loop.h"
19 #include "base/strings/string_number_conversions.h"
20 #include "base/strings/string_split.h"
21 #include "base/sys_info.h"
22 #include "ui/events/event_switches.h"
23 #include "ui/events/x/device_data_manager_x11.h"
24 #include "ui/events/x/device_list_cache_x.h"
25 #include "ui/gfx/x/x11_types.h"
26
27 namespace ui {
28
TouchFactory()29 TouchFactory::TouchFactory()
30 : pointer_device_lookup_(),
31 touch_device_available_(false),
32 touch_events_disabled_(false),
33 touch_device_list_(),
34 max_touch_points_(-1),
35 virtual_core_keyboard_device_(-1),
36 id_generator_(0) {
37 if (!DeviceDataManagerX11::GetInstance()->IsXInput2Available())
38 return;
39
40 XDisplay* display = gfx::GetXDisplay();
41 UpdateDeviceList(display);
42
43 CommandLine* cmdline = CommandLine::ForCurrentProcess();
44 touch_events_disabled_ = cmdline->HasSwitch(switches::kTouchEvents) &&
45 cmdline->GetSwitchValueASCII(switches::kTouchEvents) ==
46 switches::kTouchEventsDisabled;
47 }
48
~TouchFactory()49 TouchFactory::~TouchFactory() {
50 }
51
52 // static
GetInstance()53 TouchFactory* TouchFactory::GetInstance() {
54 return Singleton<TouchFactory>::get();
55 }
56
57 // static
SetTouchDeviceListFromCommandLine()58 void TouchFactory::SetTouchDeviceListFromCommandLine() {
59 // Get a list of pointer-devices that should be treated as touch-devices.
60 // This is primarily used for testing/debugging touch-event processing when a
61 // touch-device isn't available.
62 std::string touch_devices =
63 CommandLine::ForCurrentProcess()->GetSwitchValueASCII(
64 switches::kTouchDevices);
65
66 if (!touch_devices.empty()) {
67 std::vector<std::string> devs;
68 std::vector<unsigned int> device_ids;
69 unsigned int devid;
70 base::SplitString(touch_devices, ',', &devs);
71 for (std::vector<std::string>::iterator iter = devs.begin();
72 iter != devs.end(); ++iter) {
73 if (base::StringToInt(*iter, reinterpret_cast<int*>(&devid)))
74 device_ids.push_back(devid);
75 else
76 DLOG(WARNING) << "Invalid touch-device id: " << *iter;
77 }
78 ui::TouchFactory::GetInstance()->SetTouchDeviceList(device_ids);
79 }
80 }
81
UpdateDeviceList(Display * display)82 void TouchFactory::UpdateDeviceList(Display* display) {
83 // Detect touch devices.
84 touch_device_available_ = false;
85 touch_device_lookup_.reset();
86 touch_device_list_.clear();
87 touchscreen_ids_.clear();
88 max_touch_points_ = -1;
89
90 #if !defined(USE_XI2_MT)
91 // NOTE: The new API for retrieving the list of devices (XIQueryDevice) does
92 // not provide enough information to detect a touch device. As a result, the
93 // old version of query function (XListInputDevices) is used instead.
94 // If XInput2 is not supported, this will return null (with count of -1) so
95 // we assume there cannot be any touch devices.
96 // With XI2.1 or older, we allow only single touch devices.
97 XDeviceList dev_list =
98 DeviceListCacheX::GetInstance()->GetXDeviceList(display);
99 Atom xi_touchscreen = XInternAtom(display, XI_TOUCHSCREEN, false);
100 for (int i = 0; i < dev_list.count; i++) {
101 if (dev_list[i].type == xi_touchscreen) {
102 touch_device_lookup_[dev_list[i].id] = true;
103 touch_device_list_[dev_list[i].id] = false;
104 touch_device_available_ = true;
105 }
106 }
107 #endif
108
109 if (!DeviceDataManagerX11::GetInstance()->IsXInput2Available())
110 return;
111
112 // Instead of asking X for the list of devices all the time, let's maintain a
113 // list of pointer devices we care about.
114 // It should not be necessary to select for slave devices. XInput2 provides
115 // enough information to the event callback to decide which slave device
116 // triggered the event, thus decide whether the 'pointer event' is a
117 // 'mouse event' or a 'touch event'.
118 // However, on some desktops, some events from a master pointer are
119 // not delivered to the client. So we select for slave devices instead.
120 // If the touch device has 'GrabDevice' set and 'SendCoreEvents' unset (which
121 // is possible), then the device is detected as a floating device, and a
122 // floating device is not connected to a master device. So it is necessary to
123 // also select on the floating devices.
124 pointer_device_lookup_.reset();
125 XIDeviceList xi_dev_list =
126 DeviceListCacheX::GetInstance()->GetXI2DeviceList(display);
127 for (int i = 0; i < xi_dev_list.count; i++) {
128 XIDeviceInfo* devinfo = xi_dev_list.devices + i;
129 if (devinfo->use == XIFloatingSlave || devinfo->use == XIMasterPointer) {
130 #if defined(USE_XI2_MT)
131 for (int k = 0; k < devinfo->num_classes; ++k) {
132 XIAnyClassInfo* xiclassinfo = devinfo->classes[k];
133 if (xiclassinfo->type == XITouchClass) {
134 XITouchClassInfo* tci =
135 reinterpret_cast<XITouchClassInfo*>(xiclassinfo);
136 // Only care direct touch device (such as touch screen) right now
137 if (tci->mode == XIDirectTouch) {
138 touch_device_lookup_[devinfo->deviceid] = true;
139 touch_device_list_[devinfo->deviceid] = true;
140 touch_device_available_ = true;
141 if (tci->num_touches > 0 && tci->num_touches > max_touch_points_)
142 max_touch_points_ = tci->num_touches;
143 }
144 }
145 }
146 #endif
147 pointer_device_lookup_[devinfo->deviceid] = true;
148 } else if (devinfo->use == XIMasterKeyboard) {
149 virtual_core_keyboard_device_ = devinfo->deviceid;
150 }
151
152 #if defined(USE_XI2_MT)
153 if (devinfo->use == XIFloatingSlave || devinfo->use == XISlavePointer) {
154 for (int k = 0; k < devinfo->num_classes; ++k) {
155 XIAnyClassInfo* xiclassinfo = devinfo->classes[k];
156 if (xiclassinfo->type == XITouchClass) {
157 XITouchClassInfo* tci =
158 reinterpret_cast<XITouchClassInfo*>(xiclassinfo);
159 // Only care direct touch device (such as touch screen) right now
160 if (tci->mode == XIDirectTouch)
161 CacheTouchscreenIds(display, devinfo->deviceid);
162 }
163 }
164 }
165 #endif
166 }
167 }
168
ShouldProcessXI2Event(XEvent * xev)169 bool TouchFactory::ShouldProcessXI2Event(XEvent* xev) {
170 DCHECK_EQ(GenericEvent, xev->type);
171 XIEvent* event = static_cast<XIEvent*>(xev->xcookie.data);
172 XIDeviceEvent* xiev = reinterpret_cast<XIDeviceEvent*>(event);
173
174 #if defined(USE_XI2_MT)
175 if (event->evtype == XI_TouchBegin ||
176 event->evtype == XI_TouchUpdate ||
177 event->evtype == XI_TouchEnd) {
178 return !touch_events_disabled_ && IsTouchDevice(xiev->deviceid);
179 }
180 #endif
181 // Make sure only key-events from the virtual core keyboard are processed.
182 if (event->evtype == XI_KeyPress || event->evtype == XI_KeyRelease) {
183 return (virtual_core_keyboard_device_ < 0) ||
184 (virtual_core_keyboard_device_ == xiev->deviceid);
185 }
186
187 if (event->evtype != XI_ButtonPress &&
188 event->evtype != XI_ButtonRelease &&
189 event->evtype != XI_Motion)
190 return true;
191
192 if (!pointer_device_lookup_[xiev->deviceid])
193 return false;
194
195 return IsTouchDevice(xiev->deviceid) ? !touch_events_disabled_ : true;
196 }
197
SetupXI2ForXWindow(Window window)198 void TouchFactory::SetupXI2ForXWindow(Window window) {
199 // Setup mask for mouse events. It is possible that a device is loaded/plugged
200 // in after we have setup XInput2 on a window. In such cases, we need to
201 // either resetup XInput2 for the window, so that we get events from the new
202 // device, or we need to listen to events from all devices, and then filter
203 // the events from uninteresting devices. We do the latter because that's
204 // simpler.
205
206 XDisplay* display = gfx::GetXDisplay();
207
208 unsigned char mask[XIMaskLen(XI_LASTEVENT)];
209 memset(mask, 0, sizeof(mask));
210
211 #if defined(USE_XI2_MT)
212 XISetMask(mask, XI_TouchBegin);
213 XISetMask(mask, XI_TouchUpdate);
214 XISetMask(mask, XI_TouchEnd);
215 #endif
216 XISetMask(mask, XI_ButtonPress);
217 XISetMask(mask, XI_ButtonRelease);
218 XISetMask(mask, XI_Motion);
219 #if defined(OS_CHROMEOS)
220 if (base::SysInfo::IsRunningOnChromeOS()) {
221 XISetMask(mask, XI_KeyPress);
222 XISetMask(mask, XI_KeyRelease);
223 }
224 #endif
225
226 XIEventMask evmask;
227 evmask.deviceid = XIAllDevices;
228 evmask.mask_len = sizeof(mask);
229 evmask.mask = mask;
230 XISelectEvents(display, window, &evmask, 1);
231 XFlush(display);
232 }
233
SetTouchDeviceList(const std::vector<unsigned int> & devices)234 void TouchFactory::SetTouchDeviceList(
235 const std::vector<unsigned int>& devices) {
236 touch_device_lookup_.reset();
237 touch_device_list_.clear();
238 for (std::vector<unsigned int>::const_iterator iter = devices.begin();
239 iter != devices.end(); ++iter) {
240 DCHECK(*iter < touch_device_lookup_.size());
241 touch_device_lookup_[*iter] = true;
242 touch_device_list_[*iter] = false;
243 }
244 }
245
IsTouchDevice(unsigned deviceid) const246 bool TouchFactory::IsTouchDevice(unsigned deviceid) const {
247 return deviceid < touch_device_lookup_.size() ?
248 touch_device_lookup_[deviceid] : false;
249 }
250
IsMultiTouchDevice(unsigned int deviceid) const251 bool TouchFactory::IsMultiTouchDevice(unsigned int deviceid) const {
252 return (deviceid < touch_device_lookup_.size() &&
253 touch_device_lookup_[deviceid]) ?
254 touch_device_list_.find(deviceid)->second :
255 false;
256 }
257
QuerySlotForTrackingID(uint32 tracking_id,int * slot)258 bool TouchFactory::QuerySlotForTrackingID(uint32 tracking_id, int* slot) {
259 if (!id_generator_.HasGeneratedIDFor(tracking_id))
260 return false;
261 *slot = static_cast<int>(id_generator_.GetGeneratedID(tracking_id));
262 return true;
263 }
264
GetSlotForTrackingID(uint32 tracking_id)265 int TouchFactory::GetSlotForTrackingID(uint32 tracking_id) {
266 return id_generator_.GetGeneratedID(tracking_id);
267 }
268
AcquireSlotForTrackingID(uint32 tracking_id)269 void TouchFactory::AcquireSlotForTrackingID(uint32 tracking_id) {
270 tracking_id_refcounts_[tracking_id]++;
271 }
272
ReleaseSlotForTrackingID(uint32 tracking_id)273 void TouchFactory::ReleaseSlotForTrackingID(uint32 tracking_id) {
274 tracking_id_refcounts_[tracking_id]--;
275 if (tracking_id_refcounts_[tracking_id] == 0)
276 id_generator_.ReleaseNumber(tracking_id);
277 }
278
IsTouchDevicePresent()279 bool TouchFactory::IsTouchDevicePresent() {
280 return !touch_events_disabled_ && touch_device_available_;
281 }
282
GetMaxTouchPoints() const283 int TouchFactory::GetMaxTouchPoints() const {
284 return max_touch_points_;
285 }
286
ResetForTest()287 void TouchFactory::ResetForTest() {
288 pointer_device_lookup_.reset();
289 touch_device_lookup_.reset();
290 touch_device_available_ = false;
291 touch_events_disabled_ = false;
292 touch_device_list_.clear();
293 touchscreen_ids_.clear();
294 tracking_id_refcounts_.clear();
295 max_touch_points_ = -1;
296 id_generator_.ResetForTest();
297 }
298
SetTouchDeviceForTest(const std::vector<unsigned int> & devices)299 void TouchFactory::SetTouchDeviceForTest(
300 const std::vector<unsigned int>& devices) {
301 touch_device_lookup_.reset();
302 touch_device_list_.clear();
303 for (std::vector<unsigned int>::const_iterator iter = devices.begin();
304 iter != devices.end(); ++iter) {
305 DCHECK(*iter < touch_device_lookup_.size());
306 touch_device_lookup_[*iter] = true;
307 touch_device_list_[*iter] = true;
308 }
309 touch_device_available_ = true;
310 touch_events_disabled_ = false;
311 }
312
SetPointerDeviceForTest(const std::vector<unsigned int> & devices)313 void TouchFactory::SetPointerDeviceForTest(
314 const std::vector<unsigned int>& devices) {
315 pointer_device_lookup_.reset();
316 for (std::vector<unsigned int>::const_iterator iter = devices.begin();
317 iter != devices.end(); ++iter) {
318 pointer_device_lookup_[*iter] = true;
319 }
320 }
321
CacheTouchscreenIds(Display * display,int device_id)322 void TouchFactory::CacheTouchscreenIds(Display* display, int device_id) {
323 XDevice* device = XOpenDevice(display, device_id);
324 if (!device)
325 return;
326
327 Atom actual_type_return;
328 int actual_format_return;
329 unsigned long nitems_return;
330 unsigned long bytes_after_return;
331 unsigned char *prop_return;
332
333 const char kDeviceProductIdString[] = "Device Product ID";
334 Atom device_product_id_atom =
335 XInternAtom(display, kDeviceProductIdString, false);
336
337 if (device_product_id_atom != None &&
338 XGetDeviceProperty(display, device, device_product_id_atom, 0, 2,
339 False, XA_INTEGER, &actual_type_return,
340 &actual_format_return, &nitems_return,
341 &bytes_after_return, &prop_return) == Success) {
342 if (actual_type_return == XA_INTEGER &&
343 actual_format_return == 32 &&
344 nitems_return == 2) {
345 // An actual_format_return of 32 implies that the returned data is an
346 // array of longs. See the description of |prop_return| in `man
347 // XGetDeviceProperty` for details.
348 long* ptr = reinterpret_cast<long*>(prop_return);
349
350 // Internal displays will have a vid and pid of 0. Ignore them.
351 // ptr[0] is the vid, and ptr[1] is the pid.
352 if (ptr[0] || ptr[1])
353 touchscreen_ids_.insert(std::make_pair(ptr[0], ptr[1]));
354 }
355 XFree(prop_return);
356 }
357
358 XCloseDevice(display, device);
359 }
360
361 } // namespace ui
362